DocumentCode
1251973
Title
A model-based fuzzy logic controller with Kalman filtering for tracking mean arterial pressure
Author
Liu, Shing-Hong ; Lin, Chin-Teng
Author_Institution
Dept. of Biomed. Eng., Yuanpei Inst. of Sci. & Technol., Hsinchu, Taiwan
Volume
31
Issue
6
fYear
2001
fDate
11/1/2001 12:00:00 AM
Firstpage
676
Lastpage
686
Abstract
This paper proposes a new noninvasive measurement method for tracking the tendency of mean arterial pressure (MAP) in the radial artery. The designed system consists of a tonometer, a microsyringe device, and a model-based fuzzy logic controller. The modified flexible diaphragm tonometer is to detect the continuous blood pressure waveform and vessel volume pulse. A precise mathematical model describing the interaction between the tonometer and artery is derived. To reach accurate measurement without distortion, a model-based fuzzy logic control system is designed to compensate the change of MAP by applying a counter pressure on the tonometer chamber through the microsyringe device. The proposed control system consists of a linear predictor, a Kalman filter, and a synthetic fuzzy logic controller (SFLC). Simulation results show that, for the real physiologic MAP with changing rates up to 20 or -20 mm-Hg/minute, the model-based SFLC can beat-to-beat adjust the tonometer´s chamber pressure to follow the tendency of MAP accurately
Keywords
Kalman filters; biocontrol; cardiology; fuzzy control; pressure control; tracking; Kalman filter; arterial pressure-volume model; blood pressure; fuzzy controller; mean arterial pressure tracking; oscillometry; tonometer; vessel volume oscillation amplitude; vessel volume pulse; Arteries; Blood pressure; Control systems; Distortion measurement; Filtering; Fuzzy logic; Kalman filters; Mathematical model; Noninvasive treatment; Pressure measurement;
fLanguage
English
Journal_Title
Systems, Man and Cybernetics, Part A: Systems and Humans, IEEE Transactions on
Publisher
ieee
ISSN
1083-4427
Type
jour
DOI
10.1109/3468.983423
Filename
983423
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